重力或惯性载荷条件下髋部伸展运动的结构和性能适应性比较:一项随机对照试验。

IF 3
Rodrigo Martín-San Agustín, Lorenzo Castillo-Ballesta, Rubén Esbri-Navarro, Javier Herraiz- Garvín
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引用次数: 0

摘要

增加股二头肌长头(BFlh)肌束的长度是腘绳肌损伤预防计划的目标之一。本研究旨在研究在重力或惯性45°髋关节伸展(HE)运动和随后的去训练期进行为期六周的阻力训练后,训练诱导的BFlh结构适应性和性能测量。32名接受阻力训练的男性被分为重力负荷组(HE- g)、惯性负荷组(HE- i)和对照组(CG)。评估BFlh结构,膝关节屈曲和髋部伸展力量,通过反动作(CMJ)和深蹲跳(SJ)测试进行跳跃表现,以及每次训练前后的酸痛程度。HE-I参与者修改了BHlh束的初始长度(9.86 cm),在干预结束时增加了1.64 cm,在去训练期后比基线长1.48 cm。HE- g和HE- i两种方式都能提高髋伸肌力量(51.2 N和65.0 N),只有HE- i能提高膝关节屈肌力量(69.9 N)。HE-I训练的疼痛值低于重力负荷的表现,在不同的训练阶段至少相差1分,在最后的一些训练阶段相差超过2分。该研究提供的证据表明,在惯性载荷下进行HE是一种有效的锻炼,可以延长BFlh肌束,促进膝关节屈曲强度和SJ表现的改善,这些方面不受重力模式的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comparison of Architectural and Performance Adaptations of Hip Extension Exercise Under Gravitational or Inertial Loading Conditions: A Randomized Controlled Trial

Comparison of Architectural and Performance Adaptations of Hip Extension Exercise Under Gravitational or Inertial Loading Conditions: A Randomized Controlled Trial

Increasing the length of the biceps femoris long head (BFlh) fascicle is one of the objectives of hamstring injury prevention programs. This study aimed to investigate training-induced adaptations in BFlh architecture and performance measures after a six-week resistance training program with gravitational or inertial 45° hip extension (HE) exercise and a subsequent detraining period. Thirty-two resistance-trained males were assigned to a group doing a HE training program with gravitational loading (HE-G), HE by inertial loading (HE-I), or to a control group (CG). BFlh architecture, knee flexion and hip extension strength, jumping performance by means of the countermovement (CMJ) and squat jump (SJ) tests, and soreness before and after each training session were evaluated. HE-I participants modified the initial length of the BHlh fascicle (9.86 cm), increasing it by 1.64 cm at the end of the intervention and remaining 1.48 cm longer than baseline after the detraining period. Both HE modalities improved hip extensor strength (51.2 N for HE-G and 65.0 N) and only HE-I improved knee flexor strength (69.9 N). Soreness for HE-I exercise showed lower values than gravity-loaded performance, with at least one point difference across sessions, and more than two in some of the final sessions. This study provides evidence suggesting that HE performed with inertial loading is an effective exercise for lengthening the BFlh fascicle and promoting improvements in knee flexion strength and SJ performance, aspects not modifiable by the gravitational modality.

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